We combine HST imaging from the GEMS (Galaxy Evolution from Morphologies and SEDs) survey with photometric redshifts from COMBO-17 to explore the evolution of disk-dominated galaxies since z ≲1.1. The sample is composed of all GEMS galaxies with Sérsic indices n < 2.5, derived from fits to the galaxy images. We account fully for selection effects through careful analysis of image simulations; we are limited by the depth of the redshift and HST data to the study of galaxies with MV ≲ -20, or equivalently, log(M/M⊙) ≳ 10. We find strong evolution in the magnitude-size scaling relation for galaxies with MV≲-20, corresponding to a brightening of ∼1 mag arcsec-2 in rest-frame V band by z ∼1, Yet disks at a given absolute magnitude are bluer and ...
We combine HST/ACS imaging from the GEMS survey with redshifts and rest-frame quantities from COMBO-...
The GEMS (Galaxy Evolution from Morphology and SEDs) project combines high precision photometri...
Bars drive the dynamical evolution of disk galaxies by redistributing mass and angular momentum, and...
We combine HST imaging from the GEMS (Galaxy Evolution from Morphologies and SEDs) survey with pho...
A sample of very high resolution cosmological disk galaxy simulations is used to investigate the evo...
Surveys of distant galaxies with the Hubble Space Telescope and from the ground have shown that ther...
We combine HST/ACS imaging from the GEMS survey with redshifts and rest-frame quantities from COMBO-...
We use recent observations of high-redshift galaxies to study the evolution of galactic disks over t...
We use recent observations of high-redshift galaxies to study the evolution of galactic disks over t...
GEMS, Galaxy Evolution from Morphologies and SEDs, is a large-area (800 arcmin2) two-color (F606W an...
A sample of very high resolution cosmological disk galaxy simulations is used to investigate the evo...
We combine imaging from the Hubble Space Telescope Advanced Camera for Surveys, as part of the GEM...
GEMS (Galaxy Evolution from Morphologies and SEDs) is a large-area (800 arcmin2) two-color (F60...
We present the evolution of the luminosity-size and stellar mass-size relations of luminous (LV>~3.4...
We present the evolution of the luminosity-size and stellar mass-size relations of luminous and of m...
We combine HST/ACS imaging from the GEMS survey with redshifts and rest-frame quantities from COMBO-...
The GEMS (Galaxy Evolution from Morphology and SEDs) project combines high precision photometri...
Bars drive the dynamical evolution of disk galaxies by redistributing mass and angular momentum, and...
We combine HST imaging from the GEMS (Galaxy Evolution from Morphologies and SEDs) survey with pho...
A sample of very high resolution cosmological disk galaxy simulations is used to investigate the evo...
Surveys of distant galaxies with the Hubble Space Telescope and from the ground have shown that ther...
We combine HST/ACS imaging from the GEMS survey with redshifts and rest-frame quantities from COMBO-...
We use recent observations of high-redshift galaxies to study the evolution of galactic disks over t...
We use recent observations of high-redshift galaxies to study the evolution of galactic disks over t...
GEMS, Galaxy Evolution from Morphologies and SEDs, is a large-area (800 arcmin2) two-color (F606W an...
A sample of very high resolution cosmological disk galaxy simulations is used to investigate the evo...
We combine imaging from the Hubble Space Telescope Advanced Camera for Surveys, as part of the GEM...
GEMS (Galaxy Evolution from Morphologies and SEDs) is a large-area (800 arcmin2) two-color (F60...
We present the evolution of the luminosity-size and stellar mass-size relations of luminous (LV>~3.4...
We present the evolution of the luminosity-size and stellar mass-size relations of luminous and of m...
We combine HST/ACS imaging from the GEMS survey with redshifts and rest-frame quantities from COMBO-...
The GEMS (Galaxy Evolution from Morphology and SEDs) project combines high precision photometri...
Bars drive the dynamical evolution of disk galaxies by redistributing mass and angular momentum, and...